Ruminant Diseases and Immunology Research Unit, National Animal Disease Center, Agricultural Research Service, United States Department of Agriculture, Ames, IA, USA.
Ruminant Diseases and Immunology Research Unit, National Animal Disease Center, Agricultural Research Service, United States Department of Agriculture, Ames, IA, USA.
Biochem Biophys Res Commun. 2022 Mar 5;595:76-81. doi: 10.1016/j.bbrc.2022.01.071. Epub 2022 Jan 22.
L-enantiomers of antimicrobial peptides (AMPs) are sensitive to proteolytic degradation; however, D-enantiomers of AMPs are expected to provide improved proteolytic resistance. The present study aimed to comparatively investigate the in vitro antibacterial activity, trypsin and serum stability, toxicity, and in vivo antibacterial activity of L-enantiomeric bovine NK2A (L-NK2A) and its D-enantiomeric NK2A (D-NK2A). Circular dichroism spectroscopy of D-NK2A and L-NK2A in anionic liposomes showed α-helical structures and the α-helical conformation of D-NK2A was a mirror image of L-NK2A. Both D-NK2A and L-NK2A displayed minimal in vitro and in vivo toxicities. RP-HPLC and mass spectrometry analyses revealed that D-NK2A, but not L-NK2A, was resistant to trypsin digestion. D-NK2A and L-NK2A showed similar in vitro bacterial killing activities against Histophilus somni. Slightly reduced antibacterial activity was observed when D-NK2A and L-NK2A were pre-incubated with serum. Confocal and transmission electron microscopic findings confirmed that both peptides induced disruption of bacterial inner- and outer-membranes. Improved survivals with D-NK2A treatment were observed when compared to L-NK2A in a murine model of acute H. somni septicemia. We conclude that antibacterial activity and mode of action of NK2A are not chiral specific. With further optimization, D-NK2A may be a viable AMP candidate to combat bacterial infections.
抗菌肽(AMPs)的 L-对映异构体对蛋白水解降解敏感;然而,AMPs 的 D-对映异构体预计具有更好的抗蛋白水解性。本研究旨在比较研究 L-牛 NK2A(L-NK2A)及其 D-对映异构体 NK2A(D-NK2A)的体外抗菌活性、胰蛋白酶和血清稳定性、毒性以及体内抗菌活性。阴离子脂质体中 D-NK2A 和 L-NK2A 的圆二色谱显示α-螺旋结构,D-NK2A 的α-螺旋构象是 L-NK2A 的镜像。D-NK2A 和 L-NK2A 均表现出最小的体外和体内毒性。反相高效液相色谱和质谱分析表明,D-NK2A 而不是 L-NK2A 能抵抗胰蛋白酶消化。D-NK2A 和 L-NK2A 对豪氏乳杆菌的体外杀菌活性相似。当 D-NK2A 和 L-NK2A 与血清预孵育时,观察到抗菌活性略有降低。共聚焦和透射电子显微镜观察结果证实,两种肽均诱导细菌内外膜破裂。与 L-NK2A 相比,在急性豪氏乳杆菌败血症的小鼠模型中,D-NK2A 治疗的存活率提高。我们的结论是,NK2A 的抗菌活性和作用方式不受手性特异性的影响。经过进一步优化,D-NK2A 可能成为对抗细菌感染的可行 AMP 候选物。